Computation of Kerr lensing effect in laser amplifiers

被引:0
作者
Pflaum, Christoph [1 ,2 ]
机构
[1] Friedrich Alexander Univ Erlangen Nurnberg, Cauerstr 11, Erlangen, Germany
[2] ASLD GmbH, Erlangen, Germany
来源
NONLINEAR OPTICS AND ITS APPLICATIONS 2022 | 2022年 / 12143卷
关键词
Amplifier; Kerr lensing; numerical method; chirped pulse amplification;
D O I
10.1117/12.2620926
中图分类号
O1 [数学];
学科分类号
0701 ; 070101 ;
摘要
The Kerr lensing effect influences the amplification of ultra short pulses with high repetition rate. Numerical simulations can estimate this effect and support the optimal design an ultra short laser amplifier. We compare two approaches to simulate laser amplifiers with respect to Kerr lensing effect modeling. These are a Gaussian beam amplification method and the angular spectrum method. In both cases, by Fourier transformation, the beam is considered as a continuous wave beam with a certain spectrum. Then, the Gaussian beam amplification method allows to take into account this spectrum of the beam. This means that the wavelength dependency of stimulated emission cross section and reabsorption cross section can be taken into account. However, a Gaussian beam amplification method does not simulate diffraction effects, which arise from the non-parabolic index of refraction obtained by the Kerr effect. This is an advantage of the angular spectrum method of plane waves. It can model diffraction effects obtained by the Kerr effect. But taking into account the spectrum of the beam is more computational intensive. A parameter which indicates the strength of the Kerr lensing effect is the B-integral. Numerical simulations compare this parameter computed by the Gaussian beam amplification method and the angular spectrum method.
引用
收藏
页数:6
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共 43 条
[21]   Bloch-Maxwell treatment of amplification of high harmonic seed in soft x-ray laser amplifiers in both direct and chirped amplifications [J].
Zeitoun, Philippe ;
Oliva, Eduardo ;
Fajardo, Marta ;
Ros, David ;
Sebban, Stephane ;
Velarde, Pedro .
HIGH ENERGY DENSITY PHYSICS, 2011, 7 (04) :230-233
[22]   Kerr-lens mode-locked 2.3-μm Tm3+:YLF laser as a source of femtosecond pulses in the mid-infrared [J].
Canbaz, Ferda ;
Yorulmaz, Ismail ;
Sennaroglu, Alphan .
OPTICS LETTERS, 2017, 42 (19) :3964-3967
[23]   C-band GaN-based field-effect-transistor power amplifiers with 170-W output power [J].
Okamoto, Yasuhiro ;
Ando, Yuji ;
Nakayama, Tatsuo ;
Wakejima, Akio ;
Matsunaga, Kohji ;
Ota, Kazuki ;
Miyamoto, Hironobu .
JAPANESE JOURNAL OF APPLIED PHYSICS PART 1-REGULAR PAPERS BRIEF COMMUNICATIONS & REVIEW PAPERS, 2007, 46 (4B) :2312-2315
[24]   Thermal Effect of High Energy Repetition Rate Nd: Glass Laser [J].
Yang Sida ;
Yin Dingjun ;
Gan Zebiao ;
Chen Junchi ;
Yao Bo ;
Long Yingbin ;
Peng Yujie ;
Yu Lianghong ;
Liang Xiaoyan ;
Leng Yuxin ;
Li Ruxin .
CHINESE JOURNAL OF LASERS-ZHONGGUO JIGUANG, 2020, 47 (09)
[25]   Temperature Effect on Yb-Doped Silica Fiber Laser Performance [J].
Ilchi-Ghazaani, Maryam ;
Parvin, Parviz .
IEEE JOURNAL OF QUANTUM ELECTRONICS, 2020, 56 (05)
[26]   Effect of Laser Beam Amplitude Profile on Second Harmonic Generation Efficiency [J].
Troitskii, V. O. .
ATMOSPHERIC AND OCEANIC OPTICS, 2024, 37 (02) :271-280
[27]   NUMERICAL ANALYSIS OF SPATIAL DISTORTIONS EFFECT ON FEMTOSECOND LASER INTERFERENCE PATTERNING [J].
Ionel, L. .
ROMANIAN JOURNAL OF PHYSICS, 2015, 60 (9-10) :1508-1514
[28]   Development of a Femtosecond High-Power Ytterbium-doped Fiber Laser System and Study on Spiky Spectral Modulation in Highly Nonlinear Chirped-Pulse Fiber Amplifiers [J].
Suwon Kim ;
Yong-Ho Cha ;
Do-Young Jeong .
Journal of the Korean Physical Society, 2020, 77 :1135-1142
[29]   Development of a Femtosecond High-Power Ytterbium-doped Fiber Laser System and Study on Spiky Spectral Modulation in Highly Nonlinear Chirped-Pulse Fiber Amplifiers [J].
Kim, Suwon ;
Cha, Yong-Ho ;
Jeong, Do-Young .
JOURNAL OF THE KOREAN PHYSICAL SOCIETY, 2020, 77 (12) :1135-1142
[30]   Effect of repetition rate on gain-switched fiber laser output pulses [J].
Agrez, V. ;
Petkovsek, R. ;
Sangla, D. ;
Saby, J. ;
Picard, R. B. ;
Salin, F. .
LASER PHYSICS, 2014, 24 (10)